€5.68 (no TAX)
Microfinishing Microabrasive Film Sheet 280mm x 230mm 40 Micron 268L Stikit (100 pcs) 3M
Manufacture from materials of any heading, except that of the product 3M. What. It provides precise, controlled, close-tolerance finishes.
The high-strength film backing is resistant to breakage.
€5.68 (no TAX)
Manufacture from materials of any heading, except that of the product 3M. What. Make work easier with this film for a precise and uniform finish on different substrates such as plastic, fiberglass, wood, metals and solid surfaces.
The 268L Microfinishing Film of 3M it is a fast cutting abrasive for precise, uniform and tightly tolerated finishes. An aluminum oxide mineral is bonded with resin to a backing of 3,000-gallon high-strength polyester film for added durability. Use wet or dry to finish a wide variety of substrates.
Manufacture from materials of any heading, except that of the product 3MTM StikitTM are a micrometrically accurate aluminium oxide abrasive attached to a resistant film support. Our solution offers high cutting speeds and includes a high-strength polyester support that offers durability.
See the 80 micron abrasive tape REF: PN57308 and 60 microns REF: 141403
Confirm in advance with Sekureco.eu date of supply approx.
CHARACTERISTICS
Achieves finishes close to tolerance
- Finishing microfine film 3M 268L was designed to allow operators to achieve precise, controlled, near-tolerance finishes on surfaces from metals to plastics to wood.
- This product consists of precision, micronically graded aluminium oxide bonded with resin to a high-strength, strong polyester film backing.
- Aluminum oxide is desirable among industrial professionals for its fast cutting speed and long service life.
- Available in a wide variety of grades, operators should consider target tolerances when selecting the appropriate microfino film.
- This film comes in various converted forms, including sheets, discs and non-standard sizes and in three types of attachments.
- Run It Wet or Dry refrigerant generally extends abrasive life, increases cutting speed and avoids loading.
- The high-strength bare film backing maintains its strength and flexibility when the paper or fabric degrades when wet.
BENEFITS
- It provides precise, controlled, close-tolerance finishes.
- The high-strength film backing is resistant to breakage.
- Available in a wide range of grades and converted forms.
- Custom sizes may be available.
- Ideal for sanding plastics, paints, electronic coatings and wood, ferrous and non-ferrous metals.
- Aluminium oxide offers high cutting speed and good finish
- Supported by durable polyester film
- Achieve precise, consistent finishes within minimum tolerances on a wide variety of substrates.
APPLICATIONS
Use them to achieve a precise and uniform finish on different substrates such as plastic, fiberglass, wood, metals and solid surfaces.
The polyester film backing flexes to help achieve a consistent finish.
TECHNICAL DATA
Manufacture from materials of any heading | Aluminium oxide |
Appeal | Finished, sanded |
Supporting material | Polyester film |
Support thickness (imperial) | three thousand |
Marking | 3MTM |
Equipment - Machinery | Machinery for the manufacture of semiconductor devices |
For use in | All metals, composites, fiberglass, glass, paint, plastic, soft composite, solid surface |
Manufacturing | Community trade mark, trade mark |
Micron degree | 40 μm |
Subtract | All metals, composites, fiberglass, glass, paint, plastic, soft composite, solid surface |
STANDARDS AND REGULATIONS
Use only abrasive products that meet the highest safety standards. They must bear the corresponding European Safety Standard 'EN' number:
EN 12413: for agglomerated abrasives.
EN 13236 for superabrasives (diamond or CBN)
EN 13743 for certain flexible abrasives (vulcanized fibre discs, core or shaft brushes, laminate discs).
ABOUT 3M
3M it has solutions so diverse that they have the right answer for every need. And if not, they work alongside the customer to develop that new way of doing things. This different way of thinking is shown in studies developed to find the most optimal product for each organization.
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